by nexgentech | Oct 31, 2017 | ieee project
HIGH-PERFORMANCE QUASI-Z-SOURCE SERIES RESONANT DC-DC CONVERTER FOR PHOTOVOLTAIC MODULE LEVEL POWER ELECTRONICS APPLICATIONS Abstract This paper presents the high-performance quasi-Z-source series resonant DC-DC converter as a candidate topologyfor the PV module...
by nexgentech | Oct 31, 2017 | ieee project
QUASI-Z-SOURCE NETWORK-BASED HYBRID POWER SUPPLY SYSTEM FOR ALUMINUM ELECTROLYSIS INDUSTRY Abstract A hybrid power supply system (HPSS) based on Quasi-Z-Source Network is proposed for aluminum electrolysis, which can reduce energy consuming and carbon emission...
by nexgentech | Oct 31, 2017 | ieee project
MODELING AND ANALYSIS OF AC OUTPUT POWER FACTOR FOR WIRELESS CHARGERS IN ELECTRIC VEHICLES Abstract This paper presents a general mathematical expression and characteristic analysis of the output power factor before rectification on the receiver side for...
by nexgentech | Oct 31, 2017 | ieee project
BIDIRECTIONAL CURRENT-FED-HALF-BRIDGE (C)(LC) (LC) CONFIGURATION FOR INDUCTIVE WIRELESPOWER TRANSFER SYSTEM Abstract This paper contributes to analysis and development of a new power electronics system for bidirectional wireless power transfer. The major focus is...
by nexgentech | Oct 31, 2017 | ieee project
SIC BASED Z-SOURCE RESONANT CONVERTER WITHCONSTANT FREQUENCY AND LOAD REGULATION FOR EV WIRELESS CHARGER Abstract Traditional load regulation methods for resonant converter mainly rely on frequency modulation. It is always atrade-off between the design of the...
by nexgentech | Oct 31, 2017 | ieee project
A NEW INTEGRATION METHOD FOR AN ELECTRIC VEHICLE WIRELESS CHARGING SYSTEM USING LCC COMPENSATION Abstract There is a need for charging electric vehicles (EVs) wirelessly since it provides a more convenient,reliable, and safer charging option for EV customers....